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Ultrasonic nondestructive evaluation and imaging of defects in reinforced cementitious materials

机译:超声波无损评价及增强胶凝材料缺陷成像

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摘要

Characterization of defect is one of the important objectives of nondestructive evaluation (NDE) for condition assessment of structures. Among many other NDE techniques, ultrasonic methods play a prominent role in the both quantitative and qualitative assessment of discontinuities in reinforced cementitious materials. Due to the heterogeneous nature of concrete, ultrasonic waves are highly scattered and attenuated, leading to the difficulty of concrete inspection using conventional ultrasonic techniques, including those that work well on relatively homogeneous materials such as metals. This thesis presents an advanced method for sizing and imaging of defects in reinforced cementitious materials. A two-dimensional, three-phase composite model of concrete is proposed to study the propagation and interaction behaviors of ultrasonic waves in concrete structures, and to gain a knowledge about wave diffraction with multiple cylindrical obstacles. The response of the modeled concrete structure to an incident ultrasonic pulse input signal (pulsed ultrasonic P-wave) is analytically investigated and simulated. A characteristic profile of the defect sizing as a function of focal depth is formulated via the synthetic focusing technique. A defect sizing parameter, called characteristic width, is obtained empirically to represent the defect sizing information for the concrete. Conventional 2-D ultrasonic B-scan imaging, for example, by migration, may introduce artifacts. In this thesis, the fundamental theory for synthetic aperture beam-forming through synthetic steering and focusing of array transducers is investigated. It is possible to achieve high spatial and temporal resolution ultrasonic image free of artifacts. A time-frequency signal processing and image reconstruction algorithm are also studied. The proposed defect sizing and imaging methodology is tested with numerically simulated ultrasonic waveform signals based on the mechanical properties of a custom-made concrete specimen. Experimental works confirm the feasibility of defect sizing and imaging of the method. With the knowledge about the concrete structures being tested this method may provide a useful tool for ultrasonic NDE application to reinforced cementitious materials.
机译:缺陷的表征是用于结构状态评估的非破坏性评估(NDE)的重要目标之一。在许多其他的无损检测技术中,超声方法在增强胶凝材料不连续性的定量和定性评估中都发挥着重要作用。由于混凝土的异质性,超声波会被高度散射和衰减,从而导致使用常规超声技术(包括在诸如金属等相对均质的材料上能很好工作的超声技术)进行混凝土检查变得困难。本文提出了一种增强的胶凝材料缺陷尺寸和成像方法。为了研究超声波在混凝土结构中的传播和相互作用行为,并获得有关多个圆柱形障碍物的波衍射的知识,提出了一种二维,三相混凝土组合模型。分析并模拟了建模混凝土结构对入射超声波脉冲输入信号(脉冲超声波P波)的响应。通过合成聚焦技术可以确定缺陷尺寸随焦深变化的特征曲线。凭经验获得称为特征宽度的缺陷尺寸参数,以表示混凝土的缺陷尺寸信息。传统的二维超声B扫描成像(例如通过迁移)可能会引入伪影。本文研究了通过阵列换能器的合成转向和聚焦形成合成孔径光束的基本理论。可以获得无伪影的高空间和时间分辨率超声图像。还研究了时频信号处理和图像重建算法。根据定制的混凝土试样的机械性能,使用数值模拟的超声波波形信号对提出的缺陷尺寸和成像方法进行测试。实验工作证实了该方法的缺陷尺寸和成像的可行性。有了关于被测试的混凝土结构的知识,该方法可以为将超声波NDE应用于增强水泥材料提供有用的工具。

著录项

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    Wang Ji-yong 1967-;

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  • 年度 2003
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